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基于全基因组测序分析高产色素和桔青霉素红曲菌次生代谢基因簇和几丁质生物合成途径。

Analysis of secondary metabolite gene clusters and chitin biosynthesis pathways of Monascus purpureus with high production of pigment and citrinin based on whole-genome sequencing.

机构信息

National Engineering Research Center of Rice and Byproduct Deep Processing, Central South University of Forestry and Technology, Changsha, Hunan, China.

College of Light Industry and Food Sciences, Zhongkai University of Agriculture and Engineering, Guangzhou, Guangdong, China.

出版信息

PLoS One. 2022 Jun 1;17(6):e0263905. doi: 10.1371/journal.pone.0263905. eCollection 2022.

Abstract

Monascus is a filamentous fungus that is widely used for producing Monascus pigments in the food industry in Southeast Asia. While the development of bioinformatics has helped elucidate the molecular mechanism underlying metabolic engineering of secondary metabolite biosynthesis, the biological information on the metabolic engineering of the morphology of Monascus remains unclear. In this study, the whole genome of M. purpureus CSU-M183 strain was sequenced using combined single-molecule real-time DNA sequencing and next-generation sequencing platforms. The length of the genome assembly was 23.75 Mb in size with a GC content of 49.13%, 69 genomic contigs and encoded 7305 putative predicted genes. In addition, we identified the secondary metabolite biosynthetic gene clusters and the chitin synthesis pathway in the genome of the high pigment-producing M. purpureus CSU-M183 strain. Furthermore, it is shown that the expression levels of most Monascus pigment and citrinin clusters located genes were significantly enhanced via atmospheric room temperature plasma mutagenesis. The results provide a basis for understanding the secondary metabolite biosynthesis, and constructing the metabolic engineering of the morphology of Monascus.

摘要

红曲霉是一种丝状真菌,广泛应用于东南亚的食品工业生产红曲色素。尽管生物信息学的发展有助于阐明次生代谢物生物合成代谢工程的分子机制,但红曲霉形态代谢工程的生物学信息仍不清楚。本研究采用单分子实时 DNA 测序和新一代测序平台相结合的方法对 M. purpureus CSU-M183 菌株进行了全基因组测序。基因组组装大小为 23.75Mb,GC 含量为 49.13%,有 69 个基因组连续序列,编码 7305 个假定的预测基因。此外,我们还在高色素产生的 M. purpureus CSU-M183 菌株基因组中鉴定了次生代谢产物生物合成基因簇和几丁质合成途径。此外,结果表明,通过常压室温等离子体诱变,大多数红曲色素和桔霉素簇定位基因的表达水平显著增强。该结果为理解次生代谢物生物合成和构建红曲霉形态代谢工程提供了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2458/9159588/f9bbc1768134/pone.0263905.g001.jpg

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